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两种 Megachilid 蜜蜂属巢中的细菌群落结构和演替。

Bacterial community structure and succession in nests of two megachilid bee genera.

机构信息

Department of Bioinformatics, University of Wuerzburg, Biocenter, Am Hubland, 97074 Würzburg, Germany.

Center for Computational and Theoretical Biology, University of Wuerzburg, Emil Fischer Straße, Hubland Nord, 97074 Würzburg, Germany.

出版信息

FEMS Microbiol Ecol. 2019 Jan 1;95(1). doi: 10.1093/femsec/fiy218.

Abstract

Studies on honeybees have revealed bacterial taxa which adopt key functions in the hive, in terms of nutrient uptake and immune responses. Despite solitary bees providing invaluable ecological services, the contribution of their microbial communities to larval health and the development and fitness of adults is mainly unknown. To address this gap, we conducted a 16S rDNA meta-barcoding study including larvae and stored pollen in nest chambers from two different megachilid solitary bee genera. We tested how host taxonomy, environmental context and the developmental stage of larvae determined richness and composition of associated bacterial communities. A total of 198 specimens from Osmia bicornis, Osmia caerulescens, Megachile rotundataandMegachile versicolor nests were investigated. Solitary bee bacterial microbiota in the nesting environment were mostly homogeneous within species, and not significantly affected by landscape. For each bee species, we identified bacterial taxa that showed consistent occurrence in the larvae and stored pollen. For the pollen provision, we also described a community shift with progressing larval development, suggesting a reduction of imported floral bacteria.

摘要

对蜜蜂的研究揭示了在蜂巢中承担关键功能的细菌分类群,包括营养吸收和免疫反应。尽管独居蜜蜂提供了宝贵的生态服务,但它们的微生物群落对幼虫健康以及成虫的发育和适应性的贡献在很大程度上尚不清楚。为了解决这一差距,我们进行了一项 16S rDNA 元条形码研究,包括来自两个不同 Megachilid 独居蜜蜂属的巢室中的幼虫和储存的花粉。我们测试了宿主分类、环境背景和幼虫的发育阶段如何决定相关细菌群落的丰富度和组成。总共调查了来自 Osmia bicornis、Osmia caerulescens、Megachile rotundata 和 Megachile versicolor 巢穴的 198 个标本。在物种内,独居蜜蜂巢内环境中的细菌微生物群大多是同质的,不受景观的显著影响。对于每种蜜蜂,我们确定了在幼虫和储存的花粉中一致出现的细菌分类群。对于花粉供应,我们还描述了随着幼虫发育的进行而出现的群落转移,表明从花朵中引入的细菌减少了。

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